Optical properties of InP/ZnS quantum dots deposited into nanoporous anodic alumina

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Abstract

Spectral characteristics of InP/ZnS core/shell colloidal quantum dots of two different sizes (QD-1 and QD-2) were investigated. Absorption and luminescence spectra were analyzed for a series of solutions with a concentration range from 0.04 to 40 g/l. Energies of the optical transitions are evaluated. The obtained values of 2.60 eV (QD-1) and 2.38 eV (QD-2) correspond to the InP first excitonic transitions while 4.06 (QD-2) and 4.70 eV (QD-1, QD-2) are assumed to be caused by the ZnS shell absorption. Structures based on nanoporous anodic aluminum oxide (AAO) with the QDs were synthesized via an electrochemical oxidation and ultrasonic-assisted deposition. Chromaticity coordinates and correlated color temperatures for all phosphors under study were calculated. The fabrication possibilities of InP/ZnS@AAO nanostructures with tunable emission color (including the border of white region) were shown.

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Savchenko, S. S., Vokhmintsev, A. S., & Weinstein, I. A. (2016). Optical properties of InP/ZnS quantum dots deposited into nanoporous anodic alumina. In Journal of Physics: Conference Series (Vol. 741). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/741/1/012151

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